期刊文献+

砂土渗流过程的细观数值模拟 被引量:59

Mesomechanical simulation of seepage flow in sandy soil
在线阅读 下载PDF
导出
摘要 基于散体介质理论,利用PFC2D内置FISH语言定义的流固之间的作用力方程和压力梯度方程,求解不可压缩流体中两相介质的连续方程和Navier-Stoke方程。并尝试用该理论模拟不同水压下渗流引起砂土特性变化的全过程,数值试验得到了流速、渗透系数、孔隙率和砂的流失量等参量的定性变化规律,表明水土相互作用贯穿于渗流的全过程。模拟结果与试验结果相符,且流速与压力梯度满足达西定律,表明应用该理论来模拟复杂的水土相互作用是可行的,它具有一定的理论意义,为进一步研究多孔介质中考虑流固耦合的渗透破坏研究如流土、管涌等奠定了一定的理论基础。 The interaction and pressure gradient equation of fluid-solid was defined on the basis of particle flow theory using FISH language embedded in PFC^2D, and the continuity equation and N-S equation for fluid-solid two-phase flow model in incompressible fluid were solved. It attempts to get insight into the changes in the mechanical properties of soil subjected to seepage erosion under various pressure differences. The variations of fluid velocity, permeability, porosity and the percentage of eroded particles, etc. were obtained qualitatively in the test. The simulated results were consistent with the experimental results, and the obtained fluid velocity and hydraulic gradient satisfied the Daycy's law. So it was of practical and theoretical significance to simulate the complex interaction between the fluid and soil, and it provided the theoretical basis for the further study of more complicated seepage failure problems in porous media such as flowing soil, piping, etc.
出处 《岩土工程学报》 EI CAS CSCD 北大核心 2007年第7期977-981,共5页 Chinese Journal of Geotechnical Engineering
基金 国家自然科学基金资助项目(50379037)
关键词 细观数值模拟 散体介质理论 砂土 渗透破坏 mesomechanical simulation particle flow theory sandy soil seepage failure
  • 相关文献

参考文献11

  • 1KOVACS G.Preparing test specimen using under com-paction[J].Geotechnical Testing Journal,1981,1:16-23.
  • 2VAUGHAN P R,SOARES H F.Design of filters for clay cores of dams[J].Journal of Geotechnical Engineering,1982,108(1):17-31.
  • 3HAYASHI S,SHAHU J T.Mud pumping problem in tunnels on erosive soil deposits[J].Geotechnique,2000,50:393-408.
  • 4Itasca Consulting Group Inc.PFC2D particle flow code in 2 dimensions-optional features[M].USA:Minneapolis,2005:8-9.
  • 5BOUILARD J X,LYCZKOWSKI R W,GIDASOW D.Porosity distributions in a fluidized bed with an immersed obstacle[J].AICHE Journal,1989,35(6):908-922.
  • 6贝尔J.多孔介质流体动力学[M].李竞生,陈崇希,译.北京:中国建筑工业出版社,1983.91-94.
  • 7JACOB Bear.Hydraulics of Groundwater[M].McGrao-Hill,1979.
  • 8陈仲颐,周景星,等.土力学[M].北京:清华大学出版社,1997.39-42.
  • 9ERGUN S.Fluid flow through packed columns[J].Chemical Engineering Progress,1952,48(2):89-94.
  • 10PATANKER S V.Numerical heat transfer and fluid flow[M].Hemisphere Publishing,1980.

同被引文献538

引证文献59

二级引证文献580

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部